Tian Jingjun, Lv Chen, Xie Tao, Sun Qi, Liu Changyu, Ma Wen, Liu Chaofeng, Cheng Renyi, Yin Kang, Xu Yanhua
Department of Orthodontics, Affiliated Stomatology Hospital of Kunming Medical University, Kunming, 650106, China.
Yunnan Key Laboratory of Stomatology, Kunming, 650106, China.
Hum Genomics. 2025 Jul 13;19(1):79. doi: 10.1186/s40246-025-00788-9.
Fibronectin Leucine-Rich Transmembrane Protein 3 (FLRT3) plays a crucial role in craniofacial development and osteogenic differentiation, yet the regulatory mechanisms of microRNAs (miRNAs) on FLRT3 remain largely unexplored. This study identifies miR-144-3p as a miRNA that targets FLRT3 and investigates its role in osteogenic differentiation. These findings provide a foundation for the development of miRNA-based therapeutic strategies for craniofacial diseases and contribute to a deeper understanding of FLRT3's involvement in osteogenesis.
Mandibular bone marrow mesenchymal stem cells (MBMSCs) were isolated from SD rats using whole bone marrow and limiting dilution techniques. Flow cytometry and differentiation assays for osteogenesis and adipogenesis were conducted to characterize the cells. Bioinformatics analysis was employed to identify miRNAs that regulate FLRT3, with RT-qPCR used to select the most influential miRNA. A dual-luciferase reporter assay was performed to validate the interaction between the miRNAs and FLRT3. RT-qPCR measured miR-144-3p expression during osteogenic induction. Alkaline phosphatase and Alizarin Red S staining were used to assess the role of miR-144-3p in osteogenic differentiation. The impact of miR-144-3p on FLRT3, BMP2, and RUNX2 expression during osteogenesis was further evaluated by RT-qPCR.
MBMSCs exhibited spindle-shaped morphology, high purity, and robust proliferative capacity, with flow cytometry confirming positive expression of CD29 and CD90. Bioinformatics analysis identified four miRNAs associated with FLRT3: miR-27a-3p, miR-27b-3p, miR-199a-3p, and miR-144-3p, with miR-144-3p showing the strongest correlation. Dual-luciferase assays confirmed that FLRT3 is a target gene of miR-144-3p. Functional assays revealed that the miR-144-3p mimic decreased FLRT3 expression, while the inhibitor increased it. During osteogenic differentiation, miR-144-3p mimic inhibited osteogenesis, while the inhibitor enhanced it, corresponding to alterations in the expression of FLRT3, BMP2, and RUNX2.
miR-144-3p regulates the osteogenic differentiation of MBMSCs by targeting and modulating FLRT3, with FLRT3 being a direct target of miR-144-3p. During osteogenic differentiation, miR-144-3p inhibits osteogenesis by downregulating FLRT3, BMP2, and RUNX2 expression. This study not only elucidates the miRNA-mediated regulatory mechanism in osteogenesis but also offers a novel strategy for mandibular bone defect repair.
富含亮氨酸的纤连蛋白跨膜蛋白3(FLRT3)在颅面发育和成骨分化中起关键作用,然而,微小RNA(miRNA)对FLRT3的调控机制仍 largely未被探索。本研究鉴定出miR-144-3p是靶向FLRT3的miRNA,并研究了其在成骨分化中的作用。这些发现为基于miRNA的颅面疾病治疗策略的开发奠定了基础,并有助于更深入地了解FLRT3在骨生成中的作用。
使用全骨髓和有限稀释技术从SD大鼠中分离下颌骨骨髓间充质干细胞(MBMSC)。进行流式细胞术以及成骨和成脂分化测定以表征细胞。采用生物信息学分析鉴定调控FLRT3的miRNA,并用RT-qPCR选择最具影响力的miRNA。进行双荧光素酶报告基因测定以验证miRNA与FLRT3之间的相互作用。RT-qPCR测量成骨诱导过程中miR-144-3p的表达。使用碱性磷酸酶和茜素红S染色评估miR-144-3p在成骨分化中的作用。通过RT-qPCR进一步评估miR-144-3p在成骨过程中对FLRT3、BMP2和RUNX2表达的影响。
MBMSC呈现纺锤形形态、高纯度和强大的增殖能力,流式细胞术证实CD29和CD90呈阳性表达。生物信息学分析鉴定出与FLRT3相关的四种miRNA:miR-27a-3p、miR-27b-3p、miR-199a-3p和miR-144-3p,其中miR-144-3p显示出最强的相关性。双荧光素酶测定证实FLRT3是miR-144-3p的靶基因。功能测定表明,miR-144-3p模拟物降低FLRT3表达,而抑制剂则增加其表达。在成骨分化过程中,miR-144-3p模拟物抑制成骨,而抑制剂增强成骨,这与FLRT3、BMP2和RUNX2表达的变化相对应。
miR-144-3p通过靶向和调节FLRT3来调节MBMSC的成骨分化,FLRT3是miR-144-3p的直接靶标。在成骨分化过程中,miR-144-3p通过下调FLRT3、BMP2和RUNX2的表达来抑制成骨。本研究不仅阐明了miRNA介导的骨生成调控机制,还为下颌骨缺损修复提供了一种新策略。